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Using Range-Wide Abundance Modeling to Identify Key Conservation Areas for the Micro-Endemic Bolson Tortoise (Gopherus flavomarginatus)

机译:使用范围广泛的丰度模型来识别微地方性博尔森乌龟(Gopherus flavomarginatus)的关键保护区

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摘要

A widespread biogeographic pattern in nature is that population abundance is not uniform across the geographic range of species: most occurrence sites have relatively low numbers, whereas a few places contain orders of magnitude more individuals. The Bolson tortoise Gopherus flavomarginatus is endemic to a small region of the Chihuahuan Desert in Mexico, where habitat deterioration threatens this species with extinction. In this study we combined field burrows counts and the approach for modeling species abundance based on calculating the distance to the niche centroid to obtain range-wide abundance estimates. For the Bolson tortoise, we found a robust, negative relationship between observed burrows abundance and distance to the niche centroid, with a predictive capacity of 71%. Based on these results we identified four priority areas for the conservation of this microendemic and threatened tortoise. We conclude that this approach may be a useful approximation for identifying key areas for sampling and conservation efforts in elusive and rare species.
机译:自然界中普遍存在的一种生物地理格局是,种群的丰富度在物种的地理范围内并不统一:大多数发生地点的数量相对较低,而少数地方的个体数量更多。博尔森陆龟Gopherus flavomarginatus特有于墨西哥奇瓦瓦沙漠的一个小区域,那里的栖息地恶化威胁到该物种的灭绝。在这项研究中,我们结合了田间洞穴数和基于计算到生态位质心的距离来建立物种丰度的方法,以获得整个范围的丰度估计。对于Bolson乌龟,我们发现观察到的洞穴丰度与到利基质心的距离之间存在牢固的负相关关系,预测能力为71%。基于这些结果,我们确定了该微流行病和濒危乌龟的四个优先保护领域。我们得出的结论是,这种方法可能是一种有用的近似方法,可用于确定难以捉摸和稀有物种的采样和保护工作的关键区域。

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